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Asymmetric Transmission in a Mie-Based Dielectric Metamaterial with Fano Resonance

机译:具有Fano共振的Mie基介电超材料中的不对称传输

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摘要

Chiral metamaterials with asymmetric transmission can be applied as polarization-controlled devices. Here, a Mie-based dielectric metamaterial with a spacer exhibiting asymmetric transmission of linearly polarized waves at microwave frequencies was designed and demonstrated numerically. The unidirectional characteristic is attributed to the chirality of the metamolecule and the mutual excitation of the Mie resonances. Field distributions are simulated to investigate the underlying physical mechanism. Fano-type resonances emerge near the Mie resonances of the constituents and come from the destructive interference inside the structure. The near-field coupling further contributes to the asymmetric transmission. The influences of the lattice constant and the spacer thickness on the asymmetric characteristics were also analyzed by parameter sweeps. The proposed Mie-based metamaterial is of a simple structure, and it has the potential for applications in dielectric metadevices, such as high-performance polarization rotators.
机译:具有不对称透射的手性超材料可以用作偏振控制装置。在这里,设计并通过数值论证了具有间隔物的米氏基介电超材料,该间隔物在微波频率下呈现线性偏振波的不对称透射。单向特性归因于大分子的手性和Mie共振的相互激发。模拟场分布以研究潜在的物理机制。 Fano型共振出现在成分的Mie共振附近,并且来自结构内部的破坏性干涉。近场耦合进一步加剧了不对称传输。还通过参数扫描分析了晶格常数和间隔物厚度对不对称特性的影响。所提出的基于Mie的超材料具有简单的结构,并且具有在诸如高性能极化旋转器等介电超材料器件中应用的潜力。

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